157 research outputs found

    SIEGE: Smoking Induced Epithelial Gene Expression Database

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    The SIEGE (Smoking Induced Epithelial Gene Expression) database is a clinical resource for compiling and analyzing gene expression data from epithelial cells of the human intra-thoracic airway. This database supports a translational research study whose goal is to profile the changes in airway gene expression that are induced by cigarette smoke. RNA is isolated from airway epithelium obtained at bronchoscopy from current-, former- and never-smoker subjects, and hybridized to Affymetrix HG-U133A Genechips, which measure the level of expression of ∼22 500 human transcripts. The microarray data generated along with relevant patient information is uploaded to SIEGE by study administrators using the database's web interface, found at http://pulm.bumc.bu.edu/siegeDB. PERL-coded scripts integrated with SIEGE perform various quality control functions including the processing, filtering and formatting of stored data. The R statistical package is used to import database expression values and execute a number of statistical analyses including t-tests, correlation coefficients and hierarchical clustering. Values from all statistical analyses can be queried through CGI-based tools and web forms found on the ‘Search’ section of the database website. Query results are embedded with graphical capabilities as well as with links to other databases containing valuable gene resources, including Entrez Gene, GO, Biocarta, GeneCards, dbSNP and the NCBI Map Viewer

    SIEGE: Smoking Induced Epithelial Gene Expression Database

    Get PDF
    The SIEGE (Smoking Induced Epithelial Gene Expression) database is a clinical resource for compiling and analyzing gene expression data from epithelial cells of the human intra-thoracic airway. This database supports a translational research study whose goal is to profile the changes in airway gene expression that are induced by cigarette smoke. RNA is isolated from airway epithelium obtained at bronchoscopy from current-, former- and never-smoker subjects, and hybridized to Affymetrix HG-U133A Genechips, which measure the level of expression of ∼22 500 human transcripts. The microarray data generated along with relevant patient information is uploaded to SIEGE by study administrators using the database's web interface, found at http://pulm.bumc.bu.edu/siegeDB. PERL-coded scripts integrated with SIEGE perform various quality control functions including the processing, filtering and formatting of stored data. The R statistical package is used to import database expression values and execute a number of statistical analyses including t-tests, correlation coefficients and hierarchical clustering. Values from all statistical analyses can be queried through CGI-based tools and web forms found on the ‘Search’ section of the database website. Query results are embedded with graphical capabilities as well as with links to other databases containing valuable gene resources, including Entrez Gene, GO, Biocarta, GeneCards, dbSNP and the NCBI Map Viewer

    Reversible and permanent effects of tobacco smoke exposure on airway epithelial gene expression

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    Oligonucleotide microarray analysis revealed 175 genes that are differentially expressed in large airway epithelial cells of people who currently smoke compared with those who never smoked, with 28 classified as irreversible, 6 as slowly reversible, and 139 as rapidly reversible

    Community-based Approaches to Reduce Chronic Disease Disparities in Georgia

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    Background: Among underserved and racial/ethnic minority populations in Georgia, there are profound health disparities and a burden of chronic diseases. Such diseases, which are preventable, are influenced by risk factors, including poor nutrition, physical inactivity, lack of quality health care, and tobacco use and exposure. Awardees of the Racial and Ethnic Approaches to Community Health (REACH) and Partnerships to Improve Community Health (PICH) are implementing community-based initiatives using evidence-based, policy, systems, and environmental approaches to reduce racial and ethnic health disparities and the chronic disease burden in underserved urban and rural Georgia communities. Methods: Within the context of a social ecological framework, the REACH and PICH awardees selected interventions. Their impact in the areas of tobacco use and exposure, chronic disease prevention and management, and nutrition are described. Results: To date, the interventions of Georgia’s PICH and REACH awardees have reached approximately 805,000 Georgia residents. Conclusions: By implementing strategies for community-based policy, systems, and environmental improvement, Georgia’s PICH and REACH awardees are reducing tobacco use and exposure; increasing access to healthy foods; and providing chronic disease prevention, risk reduction, and management opportunities for underserved communities in urban and rural Georgia communities. Their efforts to address chronic disease risk factors at various social and ecological levels are contributing to a reduction in racial/ethnic health disparities and the chronic disease burden in Georgia

    Inactivation of LATS1/2 Drives Luminal-Basal Plasticity To Initiate Basal-Like Mammary Carcinomas

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    Basal-like breast cancers, an aggressive breast cancer subtype that has poor treatment options, are thought to arise from luminal mammary epithelial cells that undergo basal plasticity through poorly understood mechanisms. Using genetic mouse models and ex vivo primary organoid cultures, we show that conditional co-deletion of the LATS1 and LATS2 kinases, key effectors of Hippo pathway signaling, in mature mammary luminal epithelial cells promotes the development of Krt14 and Sox9-expressing basal-like carcinomas that metastasize over time. Genetic co-deletion experiments revealed that phenotypes resulting from the loss of LATS1/2 activity are dependent on the transcriptional regulators YAP/TAZ. Gene expression analyses of LATS1/2-deleted mammary epithelial cells notably revealed a transcriptional program that associates with human basal-like breast cancers. Our study demonstrates in vivo roles for the LATS1/2 kinases in mammary epithelial homeostasis and luminal-basal fate control and implicates signaling networks induced upon the loss of LATS1/2 activity in the development of basal-like breast cancer
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